5. Two objects of identical mass attached to strings are suspended in a large tank of liquid, as shown below. Object B has a volume of 1.3 x 105 m² and a density of 1300 kg/m³ (a) Calculate the mass of B. B. (b) If the density of the liquid is 950 kg/m³, calculate is the buoyant force acting on object B. (c) Some of the liquid is now drained from the tank until only two thirds of the volume of object B is submerged. Would the tension in the string to which object B is attached increase, decrease, or remain the same? Increase Decrease Remain the same Justify your answer.
5. Two objects of identical mass attached to strings are suspended in a large tank of liquid, as shown below. Object B has a volume of 1.3 x 105 m² and a density of 1300 kg/m³ (a) Calculate the mass of B. B. (b) If the density of the liquid is 950 kg/m³, calculate is the buoyant force acting on object B. (c) Some of the liquid is now drained from the tank until only two thirds of the volume of object B is submerged. Would the tension in the string to which object B is attached increase, decrease, or remain the same? Increase Decrease Remain the same Justify your answer.
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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A) Calculate the mass of B
b) if the density of the liquid is 950 kg/m^3, calculate the buoyant force acting on object B
C) some of the liquid is now drained from the tank u til only two thirds of the volume of object B is submerged. Would the tension in the string to which object B is attached increase, decrease or remain the same?
Show answer
![Editir
5. Two objects of identical mass attached to strings are suspended in a large tank of liquid, as shown below.
Object B has a volume of 1.3 x 10-5 m and a density of 1300 kg/m
(a) Calculate the mass of B.
B C
(b) If the density of the liquid is 950 kg/m, calculate is the buoyant force acting on object B.
(c) Some of the liquid is now drained from the tank until only two thirds of the volume of object B is submerged.
Would the tension in the string to which object B is attached increase, decrease, or remain the same?
Increase
Decrease
Remain the same
Justify your answer.
OFocus
lo
10:37
4/5/2](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fc6049916-ee50-4551-8d55-437d31d5f074%2F47487b3e-b196-42b9-8c86-3fdfe5d7a510%2Fj76ncsm_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Editir
5. Two objects of identical mass attached to strings are suspended in a large tank of liquid, as shown below.
Object B has a volume of 1.3 x 10-5 m and a density of 1300 kg/m
(a) Calculate the mass of B.
B C
(b) If the density of the liquid is 950 kg/m, calculate is the buoyant force acting on object B.
(c) Some of the liquid is now drained from the tank until only two thirds of the volume of object B is submerged.
Would the tension in the string to which object B is attached increase, decrease, or remain the same?
Increase
Decrease
Remain the same
Justify your answer.
OFocus
lo
10:37
4/5/2
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